Three-dimensional energy channeling in the unit-cell model coupled to a spherical rotator II: unidirectional energy channeling
This work is the second one in a two-part series devoted to the analysis of complex nonlinear mechanism of energy channeling emerging in a locally resonant three-dimensional, unit-cell model, and the current paper considers unidirectional energy channeling. The considered system comprises an externa...
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Published in: | Nonlinear dynamics Vol. 89; no. 4; pp. 2311 - 2327 |
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Abstract | This work is the second one in a two-part series devoted to the analysis of complex nonlinear mechanism of energy channeling emerging in a locally resonant three-dimensional, unit-cell model, and the current paper considers unidirectional energy channeling. The considered system comprises an external mass subjected to a symmetric three-dimensional linear local potential with an internal spherical rotator. The present study specifically focuses on the analysis of three-dimensional, dissipative mechanism of irreversible (unidirectional) energy transport across mutually orthogonal directions realized in the limit of low-energy excitations. In particular, this study unveils the special transient regimes of three-dimensional partial and complete transformation of in-plane vibrations of the external element to out-of-plane vibrations. Similar to the results reported in the first part of the series, this three-dimensional energy flow is fully governed by the motion of the internal spherical rotator coupled to the external mass. Analysis of this peculiar response regime is based on regular multi-scale asymptotic analysis resulting in a reduced order dissipative slow-flow model. Results of the analysis are substantiated by the numerical simulations of the full model. |
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AbstractList | This work is the second one in a two-part series devoted to the analysis of complex nonlinear mechanism of energy channeling emerging in a locally resonant three-dimensional, unit-cell model, and the current paper considers unidirectional energy channeling. The considered system comprises an external mass subjected to a symmetric three-dimensional linear local potential with an internal spherical rotator. The present study specifically focuses on the analysis of three-dimensional, dissipative mechanism of irreversible (unidirectional) energy transport across mutually orthogonal directions realized in the limit of low-energy excitations. In particular, this study unveils the special transient regimes of three-dimensional partial and complete transformation of in-plane vibrations of the external element to out-of-plane vibrations. Similar to the results reported in the first part of the series, this three-dimensional energy flow is fully governed by the motion of the internal spherical rotator coupled to the external mass. Analysis of this peculiar response regime is based on regular multi-scale asymptotic analysis resulting in a reduced order dissipative slow-flow model. Results of the analysis are substantiated by the numerical simulations of the full model. |
Author | Starosvetsky, Yuli Jayaprakash, K. R. |
Author_xml | – sequence: 1 givenname: K. R. surname: Jayaprakash fullname: Jayaprakash, K. R. email: krjp82@gmail.com, jp.kalkunte@iitgn.ac.in organization: Mechanical Engineering, Indian Institute of Technology Gandhinagar – sequence: 2 givenname: Yuli surname: Starosvetsky fullname: Starosvetsky, Yuli organization: Faculty of Mechanical Engineering, Technion-Israel Institute of Technology |
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Cites_doi | 10.1063/1.3683480 10.1243/09544062JMES864 10.1007/s11071-012-0379-1 10.1007/s11071-006-9189-7 10.1016/j.engstruct.2004.10.015 10.1016/S0141-0296(02)00115-3 10.1016/j.coldregions.2008.11.005 10.2514/6.2009-6149 10.1016/j.jsv.2016.05.001 10.1115/1.4005402 10.1142/S0218127405013101 10.1016/j.ijnonlinmec.2013.02.004 10.1002/9783527617869 10.1007/s11071-017-3568-0 10.1016/j.ijnonlinmec.2004.11.001 |
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SubjectTerms | Automotive Engineering Channeling Classical Mechanics Computer simulation Control Dimensional analysis Dissipation Dynamical Systems Energy Energy dissipation Energy flow Energy transfer Engineering Mathematical models Mechanical Engineering Multiscale analysis Nonlinear analysis Original Paper Reduced order models Three dimensional analysis Three dimensional flow Three dimensional models Unit cell Vibration |
Title | Three-dimensional energy channeling in the unit-cell model coupled to a spherical rotator II: unidirectional energy channeling |
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